Practise PU CET Lahore (Engineering & CS) Physics practice MCQs in sets of about 20 questions with instant answers and explanations. This page focuses on mix…
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Q1. The current in an AC circuit is given by I = 10 sin(100t). The frequency is
Answer: 50 / π Hz
Q2. A series LCR circuit has R = 10 ohm, L = 0.1 H, and C = 100 μF. If the frequency of the AC source is 50 Hz, what is the impedance?
Answer: 10 ohm
Q3. In an AC circuit, the voltage is given by V = 200 sin(100πt) and the current is given by I = 10 sin(100πt + π/3). What is the power factor?
Answer: 0.5
Q4. A circular coil of radius 0.1 m is placed in a uniform magnetic field of 0.2 T. If it's rotated by 180° in 0.2 s, find induced emf.
Answer: 0.0628 V
Q5. A coil is rotated in a magnetic field. The emf induced is maximum when the coil is
Answer: parallel to the field
Q6. A thermodynamic system undergoes a process in which its internal energy decreases by 500 J. If the work done by the system is 750 J, the heat transferred to the system is
Answer: 250 J
Q7. A spring has a spring constant of 100 N/m. What is the work done in compressing it by 2 m?
Answer: 200 J
Q8. A 10 V battery is connected to a 5 ohm resistor. The current is
Answer: 2 A
Q9. The impedance of an LCR circuit at resonance is
Answer: R
Q10. The unit of electric flux is
Answer: N m² / C
Q11. The ratio of specific heats (Cp/Cv) for a diatomic gas is
Answer: 1.4
Q12. How many significant figures in 100.0?
Answer: 4
Q13. What is the dimension of velocity?
Answer: LT⁻¹
Q14. Absolute error in the above measurements?
Answer: 0.01
Q15. The power dissipated in a 10 ohm resistor is 40W. What is the current?
Answer: 2 A
Q16. A mass-spring system has a time period of 2 s. What is its frequency?
Answer: 0.5 Hz
Q17. A series LCR circuit is in resonance. What is the impedance of the circuit?
Answer: R
Q18. What are the dimensions of force?
Answer: MLT⁻²
Q19. In an AC circuit, the voltage and current are given by V = 200 sin(100πt) V and I = 5 sin(100πt - π/3) A. The power loss is
Answer: 250 W
Q20. The impedance of an AC circuit is given by Z = √(R² + X²), where X is the reactance. For a capacitor, X is
Answer: 1 / ωC
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